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Troyer, Timothy L.; Mounsey, Kristen R.; King, William J.; Givens, Laura M.; Hutton, Jessica A.; Benges, Melissa Hood; Whitlatch, Kindra N.; Wagoner, Jacob D. – Journal of Chemical Education, 2018
Developing simpler, more accessible, and more affordable methods for the determination of the boiling point of microscale amounts of liquid may lead to increased utilization in research and teaching laboratories as an analytical technique. Our efforts toward that goal have revealed that digital hot plates can be used as the heat source. One option…
Descriptors: Science Instruction, Science Laboratories, Hands on Science, Chemistry
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Schultz, Madeleine; Callahan, Damien L.; Miltiadous, Anna – Journal of Chemical Education, 2020
The closure of campuses in early 2020 due to the COVID-19 pandemic meant that scheduled practical activities for introductory chemistry students could not take place. The first practical class started prior to shutdown, and 21.5% of the students undertook the face-to-face offering. The remainder completed an online offering consisting of the same…
Descriptors: Hands on Science, Home Study, Chemistry, Science Activities
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Bopardikar, Anushree; Bernstein, Debra; Drayton, Brian; McKenney, Susan – Research in Science Education, 2020
Around the globe, science education during compulsory schooling is envisioned for all learners regardless of their educational and career aspirations, including learners bound to the workforce upon secondary school completion. Yet, a major barrier in attaining this vision is low learner participation in secondary school science. Because curricula…
Descriptors: Secondary School Science, Physics, High School Students, Hands on Science
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Edmonson, Rose – Primary Science, 2020
Do you want your pupils to understand how science applies to real-world contexts, to provide more hands-on engineering experiences in your curriculum or to improve the way you integrate STEM industry partners within children's learning? These are some of the questions asked as part of the Greater Manchester Engineering Challenge (GMEC), an annual…
Descriptors: Active Learning, Hands on Science, STEM Education, Foreign Countries
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Larm, Nathaniel E.; Essner, Jeremy B.; Thon, Jason A.; Bhawawet, Nakara; Adhikari, Laxmi; St. Angelo, Sarah K.; Baker, Gary A. – Journal of Chemical Education, 2020
We report on a simple, rapid, and room-temperature undergraduate-level experiment for gold nanoparticle synthesis, analysis, and utilization as a catalyst for the sodium-borohydride-assisted reduction of methylene blue and Congo red dyes. Typical procedures toward gold nanoparticle formation require an elaborate, lengthy synthesis (some requiring…
Descriptors: Science Instruction, College Science, Undergraduate Study, Hands on Science
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Hakim, Aliefman; Jufri, A. Wahab; Jamaluddin; Supriadi; Mutmainnah, Putri Ayu – Journal of Chemical Education, 2020
Secondary metabolite compounds contained in each plant genus have certain characteristics, which is true also of the flavonoid in the genus "Artocarpus." In the experiment described here, third-year undergraduate students performed the isolation and characterization of cycloartocarpin from the roots of "Artocarpus altilis"…
Descriptors: Science Instruction, College Science, Organic Chemistry, Science Laboratories
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Cosio, Mario N.; Cardenal, Ashley D.; Maity, Asim; Hyun, Sung-Min; Akwaowo, Victoria E.; Hoffman, Connor W.; Powers, Tamara M.; Powers, David C. – Journal of Chemical Education, 2020
The demand for sustainable synthetic methods has motivated the development of a myriad of strategies for substrate oxidation chemistry that reflect the goals of green chemistry. Here we present a two-part laboratory module that provides undergraduate chemistry students hands-on experience with the concepts of sustainable chemistry in the context…
Descriptors: Chemistry, Conservation (Environment), Sustainability, Hands on Science
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Chandler, Morgan; Shevchenko, Oleg; Vivero-Escoto, Juan L.; Striplin, Caryn D.; Afonin, Kirill A. – Journal of Chemical Education, 2020
Communicating the flow of genetic information (DNA ? RNA ? protein) is not only a basis of biochemical education, but also is the essential foundation for understanding the complexity of biological processes. The described laboratory exercise demonstrates that the information encoded into different DNA sequences can be transformed into various…
Descriptors: Science Instruction, Biochemistry, Science Laboratories, Hands on Science
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Stepek, Iain A.; Hofmann, Raphael; Nichols, Paula L.; Aschwanden, Andrea; Eckard, Christophe; Aschwanden, Patrick; Bode, Jeffrey W. – Journal of Chemical Education, 2020
Despite the importance of organic chemistry to human health and quality of life, very few outreach programs have been successful in communicating this message. This contributes to negative public perceptions of organic chemistry and obscures the enormous advances in quality of life engendered by organic synthesis. New chemical outreach programs…
Descriptors: Organic Chemistry, Science Instruction, Secondary School Science, High School Students
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Hensen, Cory; Glinowiecka-Cox, Gosia; Barbera, Jack – Journal of Chemical Education, 2020
To date, the efficacy of virtual experiments is not well-understood. To better understand what differences may exist between a hands-on learning environment and a virtual learning environment, three experiments were chosen for investigation. For each experiment, approximately half of the students completed a hands-on version of the experiment, and…
Descriptors: Chemistry, Science Experiments, Hands on Science, Virtual Classrooms
Jarrett, Olga S.; Bulunuz, Mizrap; Jarrett, Robert; Bulunuz, Nermin – Online Submission, 2020
Toys are designed to be fun and playful and are highly motivating for both children and adults. Commercial toys and child-designed toys can be used both in the classroom and at home to encourage creativity and to teach science concepts. Much of what children can do with toys involves tinkering, defined by Merriam Webster as "to repair,…
Descriptors: Teaching Methods, Toys, Play, STEM Education
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Christopher J. Panebianco; Madhura P. Nijsure; Erin E. Berlew; Annie L. Jeong; Joel D. Boerckel – Biomedical Engineering Education, 2024
Mechanobiology is an interdisciplinary field that aims to understand how physical forces impact biological systems. Enhancing our knowledge of mechanobiology has become increasingly important for understanding human disease and developing novel therapeutics. There is a societal need to teach diverse students principles of mechanobiology so that we…
Descriptors: Learning Modules, Active Learning, Inquiry, Interdisciplinary Approach
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Parmin; Erna Noor Savitri; Yahya Nur Ifriza – South African Journal of Education, 2025
With the research reported here, we specifically aim to develop application products of scientific work independence instruments through science integrated learning (SIL) for various education levels (elementary schools, junior high schools, senior high schools, and universities). The SIL model was applied in learning to determine specific…
Descriptors: Elementary School Students, Secondary School Students, College Students, Student Development
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Hilal Karabulut; Hasan Gökçe; Ishak Afsin Kariper – Innovations in Education and Teaching International, 2025
The main purpose of this study is to reveal the opinions of science teacher candidates regarding the implementation of Discovery Learning-Based STEM Education in distance education with Applied Activities. The study was designed as a case study. Participants were first given basic chemistry education and introduced to the concepts of STEM,…
Descriptors: Foreign Countries, Preservice Teacher Education, Preservice Teachers, Grade 3
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Tompkins, Nathan – Physics Teacher, 2019
The Tesla coil is one of the most famous and popularly recognizable high voltage devices. Utilizing the fame of recognizability of the Tesla coil in a "Build Your Own" laboratory exercise is a great way to create a successful and highly interesting learning activity. Classical Tesla coils utilize a spark gap as the primary switch,…
Descriptors: Equipment, Energy, Physics, Science Instruction
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